首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Suppression of oncogenic properties of c-Myc by LKB1-controlled epithelial organization
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Suppression of oncogenic properties of c-Myc by LKB1-controlled epithelial organization

机译:LKB1控制的上皮组织抑制c-Myc的致癌特性

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Cellular organization into epithelial architecture maintains structural integrity and homeostasis by suppressing cell proliferation and apoptosis. However, it is unclear whether the epithelial organization is sufficient to block induction of cell-autonomous cell cycle progression and apoptotic sensitivity by activated onco-genes. We show that chronic activation of oncogenic c-Myc, starting in the developing 3D organotypic mammary acinar structures, results in hyperproliferation and transformed acinar morphology. Surprisingly, acute c-Myc activation in mature quiescent acini with established epithelial architecture fails to reinitiate the cell cycle or transform these structures. c-Myc does reinitiate the cell cycle in quiescent, but structurally unorganized, acini, which demonstrates that proper epithelial architecture is needed for the proliferation blockade. The capability of c-Myc to reinitiate the cell cycle in acinar structures is also restored by the loss of LKB1, a human homologue of the cell polarity protein PAR4. The epithelial architecture also restrains the apoptotic activity of c-Myc, but coactivation of c-Myc and a complementary TNF-related apoptosis-inducing ligand death receptor pathway can induce a strong Bim and Bid-mediated apoptotic response in the established acini. The results together expose surprising proliferation and apoptosis resistance of organized epithelial structures and identify a role for the polarity regulator LKB1 in the development of c-Myc-resistant cell organization.
机译:上皮结构中的细胞组织通过抑制细胞增殖和凋亡来维持结构完整性和体内稳态。然而,尚不清楚上皮组织是否足以阻止被激活的癌基因诱导细胞自主细胞周期进程和凋亡敏感性。我们表明,致癌性c-Myc的慢性激活从发展中的3D器官型乳腺腺泡结构开始,导致过度增殖和腺泡形态改变。出乎意料的是,成熟的静止性腺泡中具有已建立的上皮结构的急性c-Myc激活不能重新启动细胞周期或转化这些结构。 c-Myc确实会在静止但结构无组织的痤疮中重新启动细胞周期,这表明增殖阻断需要适当的上皮结构。通过丢失细胞极性蛋白PAR4的人类同源物LKB1,也恢复了c-Myc在腺泡结构中重新启动细胞周期的能力。上皮结构也抑制c-Myc的凋亡活性,但是c-Myc和互补的TNF相关凋亡诱导配体死亡受体途径的共激活可以在已建立的腺泡中诱导强烈的Bim和Bid介导的凋亡反应。结果共同揭示了令人惊讶的组织上皮结构的增殖和凋亡抗性,并确定了极性调节剂LKB1在c-Myc抗性细胞组织发展中的作用。

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